In Arabidopsis thaliana, lateral-root-forming competence of pericycle cells is associated with their position at the xylem poles and depends on the establishment of protoxylem-localized auxin response maxima. In maize, our histological analyses revealed an interruption of the pericycle at the xylem poles, and confirmed the earlier reported proto-phloem-specific lateral root initiation. Phloempole pericycle cells were larger and had thinner cell walls compared with the other pericycle cells, highlighting the heterogeneous character of the maize root pericycle. A maize DR5::RFP marker line demonstrated the presence of auxin response maxima in differentiating xylem cells at the root tip and in cells surrounding the proto-phloem vessels. Chemic...
Plant growth relies heavily on a root system that is hidden belowground, which develops post-embryon...
Root systems can display variable architectures that contribute to survival strategies of plants. Th...
Lateral organ position along roots and shoots largely determines plant architecture, and depends on ...
In Arabidopsis thaliana, lateral-root-forming competence of pericycle cells is associated with their...
In plants, the developmental mechanisms that regulate the positioning of lateral organs along the pr...
At the onset of lateral root initiation in Arabidopsis thaliana, the phytohormone auxin activates xy...
The outer tissues of dicotyledonous plant roots (i.e. epidermis, cortex, and endodermis) are clearly...
International audienceAbstract The outer tissues of dicotyledonous plant roots (i.e. epidermis, cort...
Root branching happens through the formation of new meristems out of a limited number of pericycle c...
Lateral root development in Arabidopsis provides a model for the study of hormonal signals that regu...
International audienceTo sustain a lifelong ability to initiate organs, plants retain pools of undif...
In Arabidopsis, lateral root initiation occurs in a subset of pericycle cells at the xylem pole that...
Root system architecture depends on lateral root (LR) initiation that takes place in a relatively na...
To sustain a lifelong ability to initiate organs, plants retain pools of undifferentiated cells with...
Lateral root formation can be divided into two major phases: pericycle activation and meristem estab...
Plant growth relies heavily on a root system that is hidden belowground, which develops post-embryon...
Root systems can display variable architectures that contribute to survival strategies of plants. Th...
Lateral organ position along roots and shoots largely determines plant architecture, and depends on ...
In Arabidopsis thaliana, lateral-root-forming competence of pericycle cells is associated with their...
In plants, the developmental mechanisms that regulate the positioning of lateral organs along the pr...
At the onset of lateral root initiation in Arabidopsis thaliana, the phytohormone auxin activates xy...
The outer tissues of dicotyledonous plant roots (i.e. epidermis, cortex, and endodermis) are clearly...
International audienceAbstract The outer tissues of dicotyledonous plant roots (i.e. epidermis, cort...
Root branching happens through the formation of new meristems out of a limited number of pericycle c...
Lateral root development in Arabidopsis provides a model for the study of hormonal signals that regu...
International audienceTo sustain a lifelong ability to initiate organs, plants retain pools of undif...
In Arabidopsis, lateral root initiation occurs in a subset of pericycle cells at the xylem pole that...
Root system architecture depends on lateral root (LR) initiation that takes place in a relatively na...
To sustain a lifelong ability to initiate organs, plants retain pools of undifferentiated cells with...
Lateral root formation can be divided into two major phases: pericycle activation and meristem estab...
Plant growth relies heavily on a root system that is hidden belowground, which develops post-embryon...
Root systems can display variable architectures that contribute to survival strategies of plants. Th...
Lateral organ position along roots and shoots largely determines plant architecture, and depends on ...